2003ApJ...584.1035O


Query : 2003ApJ...584.1035O

2003ApJ...584.1035O - Astrophys. J., 584, 1035-1041 (2003/February-3)

On the origin of long secondary periods in semiregular variables.

OLIVIER E.A. and WOOD P.R.

Abstract (from CDS):

The presence of a long secondary period (LSP) in the light curves of some local semiregular variables has been known for many years. Furthermore, the LSPs have recently been found in the light curves of approximately 25% of the semiregular variables in the LMC. They typically have a length of ∼500-4000 days, some 5-15 times longer than the primary period. Binarity, pulsation, periodic dust ejection, and rotation have been suggested as the origin of the LSPs. Here we analyze echelle spectra of a group of local semiregular variables with LSPs (hereafter LSPVs) in order to try to distinguish between these suggestions. In general, we find that LSPVs do not have broader spectral features than semiregulars without a long secondary period (hereafter non-LSPVs). The general upper limit on the equatorial rotation velocity of 3 km/s rules out rotating spot and similar models. One LSPV, V Hya, does have broader spectral lines than similar carbon stars, but it is shown here that rotation alone is not a good model for explaining the broad lines. Mid-infrared colors of LSPs and non-LSPVs are similar and there are no LSPVs showing the large (60-25) µm IRAS color exhibited by some R Coronae Borealis (RCB) stars. Thus, there is no evidence for periodic dust ejection from LSPVs. Finally, we find that the LSPVs show larger radial velocity variations than non-LSPVs, which suggests that LSPs are caused either by binarity or by pulsation. A similar conclusion was derived by Hinkle and co-workers.

Abstract Copyright:

Journal keyword(s): Infrared: Stars - Galaxies: Magellanic Clouds - Stars: Variables: Other

Simbad objects: 57

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Number of rows : 57
N Identifier Otype ICRS (J2000)
RA
ICRS (J2000)
DEC
Mag U Mag B Mag V Mag R Mag I Sp type #ref
1850 - 2024
#notes
1 V* AG Cet LP* 00 28 00.5467736712 -11 39 31.678095672   8.56 7.36     M5III 46 0
2 V* Z Eri LP* 02 47 55.9221088152 -12 27 38.321064756 9.83 8.46 6.90     M5III 112 0
3 V* RR Eri LP* 02 52 14.1850966152 -08 16 01.430627268   8.59 7.16     M5III 56 0
4 V* SU Eri LP* 03 51 27.0237925776 -01 22 16.336692408   9.71 8.545 8.27   M6III 28 0
5 V* V Eri AB* 04 04 18.8000912980 -15 43 30.499742695   10.405 9.146 8.912   M7+II: 87 0
6 V* T Cae C* 04 47 18.9236637528 -36 12 33.571330524 13.27 10.05 7.73     C-N4IV: 61 0
7 V* W Ori C* 05 05 23.7190712856 +01 10 39.454639032 16.36 9.52 6.10 3.83 2.35 C-N5 287 0
8 V* RX Lep AB* 05 11 22.8716317615 -11 50 56.713575585 8.37 7.14 5.68     M6III 102 0
9 NAME LMC G 05 23 34.6 -69 45 22     0.4     ~ 17434 0
10 V* RT Ori C* 05 33 13.7455463856 +07 09 12.430930644   10.8 9.70     C-N5 80 1
11 V* Y Tau C* 05 45 39.4101366456 +20 41 42.148590324 15.71 9.90 6.90 4.69 3.19 C-N5- 224 1
12 V* S Lep LP* 06 05 45.5496784008 -24 11 44.015025408 9.72 8.42 6.82 4.12 1.75 M6+IIIa 104 0
13 V* GK Ori C* 06 17 42.0948428976 +08 31 11.394748236     9.50     C-N5- 61 0
14 V* SX Mon LP* 06 51 57.3257316912 +04 45 52.517381076   8.94 7.66     M5III 13 0
15 V* RV Mon C* 06 58 21.4892787216 +06 10 01.558277796   10.4 7.47     C4,5 103 1
16 V* RY Mon C* 07 06 56.4753359184 -07 33 26.505848700   11.94 7.50     C-N5 97 0
17 V* CO CMa LP* 07 14 00.9868176888 -26 06 34.945761060   9.451 9.70 7.49   M3IIIe 14 0
18 V* GH CMa LP* 07 22 23.0907515712 -20 30 23.970747348   8.478 7.053     M4III 33 0
19 * 27 Cnc LP* 08 26 43.9391779464 +12 39 16.592883912 9.02 7.10 5.50 3.88 2.47 M3IIIa 70 0
20 V* GO Vel LP* 08 37 39.6875143968 -40 26 08.077584048   8.575 6.979     M4III 31 0
21 V* AK Hya LP* 08 39 53.5421610192 -17 18 10.730602800   8.00 6.67     M6III 76 0
22 V* RT Cnc LP* 08 58 15.9993994296 +10 50 42.676559520 10.04 8.97 7.52     M5III 58 1
23 V* SY Vel LP* 09 12 25.7260697400 -43 46 38.706262860   9.40 8.12     M5/6III 21 0
24 V* IN Hya LP* 09 20 36.6822884904 +00 10 54.139721628   8.287 6.698     M3/4III 49 0
25 V* SZ Vel LP* 09 50 07.4027816496 -44 39 07.566619032   10.68 9.36     M5 13 0
26 V* Y Hya C* 09 51 03.7177289688 -23 01 02.351120088 17.75 10.45 6.63     C-N4.5III: 114 0
27 V* SU Hya LP* 09 53 43.2767086680 -21 50 41.486615304   10.99 9.591     M4III 7 0
28 V* IO Hya LP* 10 07 32.1711529704 -22 29 22.620171480   8.56 7.11     M4III 24 0
29 V* CK Car s*r 10 24 25.3598323512 -60 11 29.042707056   9.63 7.59     M3.5Iab 59 0
30 V* U Hya C* 10 37 33.2729535 -13 23 04.352923 13.29 7.51 4.82 3.05 1.78 C-N5 302 0
31 V* V Hya C* 10 51 37.2615873024 -21 15 00.333928044   12.23 6.80 7.42   C-N:6 366 0
32 V* BZ Car s*r 10 54 06.2515015224 -62 02 32.817608412 11.90 9.89 7.71     M3+Ib 54 0
33 V* RW Cen C* 11 07 17.8664563944 -55 07 19.064999640   11.65 8.78     C 23 0
34 V* T Crt LP* 11 23 53.0053929384 -19 54 30.262570776   10.00 8.79     M6III 31 0
35 V* RR Crt LP* 11 31 41.2021206048 -12 22 52.945734900   11.17 10.00 8.22   M5 12 0
36 * C01 Cen LP* 11 35 13.2823419624 -47 22 21.284741784   7.299 5.675     M3/4III 55 0
37 V* RR Mus C* 11 39 25.0804942368 -72 33 36.809793792   11.2 11.30     C 27 0
38 V* T Mus C* 13 21 13.8460379880 -74 26 30.980302656   10.9 9.40     C-J4.5 51 0
39 V* EV Vir LP* 14 13 09.7752371328 -13 51 35.751630420   8.43 6.88     M4-M4.5II-III 54 0
40 V* AN Vir LP* 14 18 00.3543740952 -14 42 23.213230164   9.97 8.68     M6III 19 0
41 V* V Nor LP* 16 10 01.7218713360 -49 14 12.051187584   12.11 10.00     M5III 26 0
42 V* W Nor LP* 16 16 42.4814647440 -52 36 13.700026728   10.39 10.30     M4/5(III) 16 0
43 V* V520 Oph Mi* 17 22 52.8791484624 -29 12 43.360024248   12.23 10.04     K0 8 0
44 V* V521 Oph S* 17 23 48.9038534976 -28 28 47.599165812   12.788 10.614 9.742   S5,4 34 0
45 V* TW Oph C* 17 29 43.6639675104 -19 28 22.866171888   12.95 8.79 7.54 8.70 C-N5 120 0
46 V* V Pav C* 17 43 18.9398256336 -57 43 26.289782112   10.11 6.673 7.14 8.88 C6,4 69 0
47 V* V574 Oph Mi* 18 06 15.5204251608 +03 24 08.930415024   11.11 9.84     M5 14 0
48 V* TY Oph C* 18 31 23.2675766472 +04 22 53.955705216   13.10 12.70     C-N5+ 57 0
49 V* RT Pav LP* 18 36 30.5362753944 -69 53 06.093808260   9.56 8.20     M4/5III 19 0
50 V* V515 Oph LP* 18 39 33.0934812912 +11 50 39.143764320   12.11 10.61     K2 11 0
51 V* UV Aql C* 18 58 32.4279985824 +14 21 49.597230024   14.65 11.10 9.30 7.83 C5,3 77 0
52 V* V Aql C* 19 04 24.1544971752 -05 41 05.444321424   11.09 6.90     C-N5 215 0
53 V* EI Del LP* 20 26 14.2997744040 +05 12 12.319704576   11.59 9.83     M2 8 0
54 V* V Aqr LP* 20 46 49.3615871112 +02 26 15.239806188   9.73 8.53     M5/6(III) 50 0
55 V* Y Pav C* 21 24 16.7499375384 -69 44 01.960245204 12.63 9.23 6.41     C7,3 87 0
56 V* SX Pav LP* 21 28 44.9254616915 -69 30 19.382609896   6.97 5.62     M5III 46 0
57 V* BM Aqr LP* 22 06 44.9840020488 -15 38 40.114900176   11.62 10.00     M3(III) 21 0

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